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An Integro-Differential Model for 3-D Eddy Current Computation in Carbon Fiber Reinforced Polymer Composites

机译:碳纤维增强聚合物复合材料中3-D涡流计算的积分微分模型

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This work deals with the 3-D numerical modeling of the interaction of an electromagnetic field with laminated carbon fiber reinforced polymer composites (CFRPs) for nondestructive testing applications. A model based on an integro-differential formulation in terms of the electric vector potential is developed for eddy current computation in CFRPs. It accounts naturally for the electric current and magnetic flux conservations. Moreover, it allows confining the modelling to the electrically conductive parts of the device, and, for thin structures, it can be reduced to a quasi-two-dimensional case involving only the normal component of the electric vector potential. To avoid storing the dense matrices resulting from the discretization of the integral terms, an iterative method is proposed to solve the resulting algebraic system; this results in a considerable economy in memory space and gain in computation time.
机译:这项工作涉及电磁场与层压碳纤维增强聚合物复合材料(CFRP)相互作用的3-D数值建模,用于无损测试应用。针对CFRP中的涡流计算,开发了一种基于积分微分公式(基于矢量势)的模型。它自然地说明了电流和磁通守恒。此外,它允许将建模限制在设备的导电部分中,并且对于薄结构,可以将其简化为仅涉及矢量电势的法向分量的准二维情况。为了避免存储因积分项离散而产生的稠密矩阵,提出了一种迭代方法来求解所得的代数系统。这样可以节省存储空间,并节省计算时间。

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